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in.c revision 1.2
      1  1.1  cgd /*
      2  1.1  cgd  * Copyright (c) 1982, 1986, 1991 Regents of the University of California.
      3  1.1  cgd  * All rights reserved.
      4  1.1  cgd  *
      5  1.1  cgd  * Redistribution and use in source and binary forms, with or without
      6  1.1  cgd  * modification, are permitted provided that the following conditions
      7  1.1  cgd  * are met:
      8  1.1  cgd  * 1. Redistributions of source code must retain the above copyright
      9  1.1  cgd  *    notice, this list of conditions and the following disclaimer.
     10  1.1  cgd  * 2. Redistributions in binary form must reproduce the above copyright
     11  1.1  cgd  *    notice, this list of conditions and the following disclaimer in the
     12  1.1  cgd  *    documentation and/or other materials provided with the distribution.
     13  1.1  cgd  * 3. All advertising materials mentioning features or use of this software
     14  1.1  cgd  *    must display the following acknowledgement:
     15  1.1  cgd  *	This product includes software developed by the University of
     16  1.1  cgd  *	California, Berkeley and its contributors.
     17  1.1  cgd  * 4. Neither the name of the University nor the names of its contributors
     18  1.1  cgd  *    may be used to endorse or promote products derived from this software
     19  1.1  cgd  *    without specific prior written permission.
     20  1.1  cgd  *
     21  1.1  cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     22  1.1  cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     23  1.1  cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     24  1.1  cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     25  1.1  cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     26  1.1  cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     27  1.1  cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     28  1.1  cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     29  1.1  cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     30  1.1  cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     31  1.1  cgd  * SUCH DAMAGE.
     32  1.1  cgd  *
     33  1.2  cgd  *	from: @(#)in.c	7.17 (Berkeley) 4/20/91
     34  1.2  cgd  *	$Id: in.c,v 1.2 1993/05/18 18:20:07 cgd Exp $
     35  1.1  cgd  */
     36  1.1  cgd 
     37  1.1  cgd #include "param.h"
     38  1.1  cgd #include "ioctl.h"
     39  1.2  cgd #include "select.h"
     40  1.1  cgd #include "mbuf.h"
     41  1.1  cgd #include "socket.h"
     42  1.1  cgd #include "socketvar.h"
     43  1.1  cgd #include "in_systm.h"
     44  1.1  cgd #include "net/if.h"
     45  1.1  cgd #include "net/route.h"
     46  1.1  cgd #include "net/af.h"
     47  1.1  cgd #include "in.h"
     48  1.1  cgd #include "in_var.h"
     49  1.1  cgd 
     50  1.1  cgd #ifdef INET
     51  1.1  cgd /*
     52  1.1  cgd  * Formulate an Internet address from network + host.
     53  1.1  cgd  */
     54  1.1  cgd struct in_addr
     55  1.1  cgd in_makeaddr(net, host)
     56  1.1  cgd 	u_long net, host;
     57  1.1  cgd {
     58  1.1  cgd 	register struct in_ifaddr *ia;
     59  1.1  cgd 	register u_long mask;
     60  1.1  cgd 	u_long addr;
     61  1.1  cgd 
     62  1.1  cgd 	if (IN_CLASSA(net))
     63  1.1  cgd 		mask = IN_CLASSA_HOST;
     64  1.1  cgd 	else if (IN_CLASSB(net))
     65  1.1  cgd 		mask = IN_CLASSB_HOST;
     66  1.1  cgd 	else
     67  1.1  cgd 		mask = IN_CLASSC_HOST;
     68  1.1  cgd 	for (ia = in_ifaddr; ia; ia = ia->ia_next)
     69  1.1  cgd 		if ((ia->ia_netmask & net) == ia->ia_net) {
     70  1.1  cgd 			mask = ~ia->ia_subnetmask;
     71  1.1  cgd 			break;
     72  1.1  cgd 		}
     73  1.1  cgd 	addr = htonl(net | (host & mask));
     74  1.1  cgd 	return (*(struct in_addr *)&addr);
     75  1.1  cgd }
     76  1.1  cgd 
     77  1.1  cgd /*
     78  1.1  cgd  * Return the network number from an internet address.
     79  1.1  cgd  */
     80  1.1  cgd u_long
     81  1.1  cgd in_netof(in)
     82  1.1  cgd 	struct in_addr in;
     83  1.1  cgd {
     84  1.1  cgd 	register u_long i = ntohl(in.s_addr);
     85  1.1  cgd 	register u_long net;
     86  1.1  cgd 	register struct in_ifaddr *ia;
     87  1.1  cgd 
     88  1.1  cgd 	if (IN_CLASSA(i))
     89  1.1  cgd 		net = i & IN_CLASSA_NET;
     90  1.1  cgd 	else if (IN_CLASSB(i))
     91  1.1  cgd 		net = i & IN_CLASSB_NET;
     92  1.1  cgd 	else if (IN_CLASSC(i))
     93  1.1  cgd 		net = i & IN_CLASSC_NET;
     94  1.1  cgd 	else
     95  1.1  cgd 		return (0);
     96  1.1  cgd 
     97  1.1  cgd 	/*
     98  1.1  cgd 	 * Check whether network is a subnet;
     99  1.1  cgd 	 * if so, return subnet number.
    100  1.1  cgd 	 */
    101  1.1  cgd 	for (ia = in_ifaddr; ia; ia = ia->ia_next)
    102  1.1  cgd 		if (net == ia->ia_net)
    103  1.1  cgd 			return (i & ia->ia_subnetmask);
    104  1.1  cgd 	return (net);
    105  1.1  cgd }
    106  1.1  cgd 
    107  1.1  cgd /*
    108  1.1  cgd  * Compute and save network mask as sockaddr from an internet address.
    109  1.1  cgd  */
    110  1.1  cgd in_sockmaskof(in, sockmask)
    111  1.1  cgd 	struct in_addr in;
    112  1.1  cgd 	register struct sockaddr_in *sockmask;
    113  1.1  cgd {
    114  1.1  cgd 	register u_long net;
    115  1.1  cgd 	register u_long mask;
    116  1.1  cgd     {
    117  1.1  cgd 	register u_long i = ntohl(in.s_addr);
    118  1.1  cgd 
    119  1.1  cgd 	if (i == 0)
    120  1.1  cgd 		net = 0, mask = 0;
    121  1.1  cgd 	else if (IN_CLASSA(i))
    122  1.1  cgd 		net = i & IN_CLASSA_NET, mask = IN_CLASSA_NET;
    123  1.1  cgd 	else if (IN_CLASSB(i))
    124  1.1  cgd 		net = i & IN_CLASSB_NET, mask = IN_CLASSB_NET;
    125  1.1  cgd 	else if (IN_CLASSC(i))
    126  1.1  cgd 		net = i & IN_CLASSC_NET, mask = IN_CLASSC_NET;
    127  1.1  cgd 	else
    128  1.1  cgd 		net = i, mask = -1;
    129  1.1  cgd     }
    130  1.1  cgd     {
    131  1.1  cgd 	register struct in_ifaddr *ia;
    132  1.1  cgd 	/*
    133  1.1  cgd 	 * Check whether network is a subnet;
    134  1.1  cgd 	 * if so, return subnet number.
    135  1.1  cgd 	 */
    136  1.1  cgd 	for (ia = in_ifaddr; ia; ia = ia->ia_next)
    137  1.1  cgd 		if (net == ia->ia_net)
    138  1.1  cgd 			mask =  ia->ia_subnetmask;
    139  1.1  cgd     }
    140  1.1  cgd     {
    141  1.1  cgd 	register char *cpbase = (char *)&(sockmask->sin_addr);
    142  1.1  cgd 	register char *cp = (char *)(1 + &(sockmask->sin_addr));
    143  1.1  cgd 
    144  1.1  cgd 	sockmask->sin_addr.s_addr = htonl(mask);
    145  1.1  cgd 	sockmask->sin_len = 0;
    146  1.1  cgd 	while (--cp >= cpbase)
    147  1.1  cgd 		if (*cp) {
    148  1.1  cgd 			sockmask->sin_len = 1 + cp - (caddr_t)sockmask;
    149  1.1  cgd 			break;
    150  1.1  cgd 		}
    151  1.1  cgd     }
    152  1.1  cgd }
    153  1.1  cgd 
    154  1.1  cgd /*
    155  1.1  cgd  * Return the host portion of an internet address.
    156  1.1  cgd  */
    157  1.1  cgd u_long
    158  1.1  cgd in_lnaof(in)
    159  1.1  cgd 	struct in_addr in;
    160  1.1  cgd {
    161  1.1  cgd 	register u_long i = ntohl(in.s_addr);
    162  1.1  cgd 	register u_long net, host;
    163  1.1  cgd 	register struct in_ifaddr *ia;
    164  1.1  cgd 
    165  1.1  cgd 	if (IN_CLASSA(i)) {
    166  1.1  cgd 		net = i & IN_CLASSA_NET;
    167  1.1  cgd 		host = i & IN_CLASSA_HOST;
    168  1.1  cgd 	} else if (IN_CLASSB(i)) {
    169  1.1  cgd 		net = i & IN_CLASSB_NET;
    170  1.1  cgd 		host = i & IN_CLASSB_HOST;
    171  1.1  cgd 	} else if (IN_CLASSC(i)) {
    172  1.1  cgd 		net = i & IN_CLASSC_NET;
    173  1.1  cgd 		host = i & IN_CLASSC_HOST;
    174  1.1  cgd 	} else
    175  1.1  cgd 		return (i);
    176  1.1  cgd 
    177  1.1  cgd 	/*
    178  1.1  cgd 	 * Check whether network is a subnet;
    179  1.1  cgd 	 * if so, use the modified interpretation of `host'.
    180  1.1  cgd 	 */
    181  1.1  cgd 	for (ia = in_ifaddr; ia; ia = ia->ia_next)
    182  1.1  cgd 		if (net == ia->ia_net)
    183  1.1  cgd 			return (host &~ ia->ia_subnetmask);
    184  1.1  cgd 	return (host);
    185  1.1  cgd }
    186  1.1  cgd 
    187  1.1  cgd #ifndef SUBNETSARELOCAL
    188  1.1  cgd #define	SUBNETSARELOCAL	1
    189  1.1  cgd #endif
    190  1.1  cgd int subnetsarelocal = SUBNETSARELOCAL;
    191  1.1  cgd /*
    192  1.1  cgd  * Return 1 if an internet address is for a ``local'' host
    193  1.1  cgd  * (one to which we have a connection).  If subnetsarelocal
    194  1.1  cgd  * is true, this includes other subnets of the local net.
    195  1.1  cgd  * Otherwise, it includes only the directly-connected (sub)nets.
    196  1.1  cgd  */
    197  1.1  cgd in_localaddr(in)
    198  1.1  cgd 	struct in_addr in;
    199  1.1  cgd {
    200  1.1  cgd 	register u_long i = ntohl(in.s_addr);
    201  1.1  cgd 	register struct in_ifaddr *ia;
    202  1.1  cgd 
    203  1.1  cgd 	if (subnetsarelocal) {
    204  1.1  cgd 		for (ia = in_ifaddr; ia; ia = ia->ia_next)
    205  1.1  cgd 			if ((i & ia->ia_netmask) == ia->ia_net)
    206  1.1  cgd 				return (1);
    207  1.1  cgd 	} else {
    208  1.1  cgd 		for (ia = in_ifaddr; ia; ia = ia->ia_next)
    209  1.1  cgd 			if ((i & ia->ia_subnetmask) == ia->ia_subnet)
    210  1.1  cgd 				return (1);
    211  1.1  cgd 	}
    212  1.1  cgd 	return (0);
    213  1.1  cgd }
    214  1.1  cgd 
    215  1.1  cgd /*
    216  1.1  cgd  * Determine whether an IP address is in a reserved set of addresses
    217  1.1  cgd  * that may not be forwarded, or whether datagrams to that destination
    218  1.1  cgd  * may be forwarded.
    219  1.1  cgd  */
    220  1.1  cgd in_canforward(in)
    221  1.1  cgd 	struct in_addr in;
    222  1.1  cgd {
    223  1.1  cgd 	register u_long i = ntohl(in.s_addr);
    224  1.1  cgd 	register u_long net;
    225  1.1  cgd 
    226  1.1  cgd 	if (IN_EXPERIMENTAL(i))
    227  1.1  cgd 		return (0);
    228  1.1  cgd 	if (IN_CLASSA(i)) {
    229  1.1  cgd 		net = i & IN_CLASSA_NET;
    230  1.1  cgd 		if (net == 0 || net == IN_LOOPBACKNET)
    231  1.1  cgd 			return (0);
    232  1.1  cgd 	}
    233  1.1  cgd 	return (1);
    234  1.1  cgd }
    235  1.1  cgd 
    236  1.1  cgd int	in_interfaces;		/* number of external internet interfaces */
    237  1.1  cgd extern	struct ifnet loif;
    238  1.1  cgd 
    239  1.1  cgd /*
    240  1.1  cgd  * Generic internet control operations (ioctl's).
    241  1.1  cgd  * Ifp is 0 if not an interface-specific ioctl.
    242  1.1  cgd  */
    243  1.1  cgd /* ARGSUSED */
    244  1.1  cgd in_control(so, cmd, data, ifp)
    245  1.1  cgd 	struct socket *so;
    246  1.1  cgd 	int cmd;
    247  1.1  cgd 	caddr_t data;
    248  1.1  cgd 	register struct ifnet *ifp;
    249  1.1  cgd {
    250  1.1  cgd 	register struct ifreq *ifr = (struct ifreq *)data;
    251  1.1  cgd 	register struct in_ifaddr *ia = 0;
    252  1.1  cgd 	register struct ifaddr *ifa;
    253  1.1  cgd 	struct in_ifaddr *oia;
    254  1.1  cgd 	struct in_aliasreq *ifra = (struct in_aliasreq *)data;
    255  1.1  cgd 	struct mbuf *m;
    256  1.1  cgd 	struct sockaddr_in oldaddr;
    257  1.1  cgd 	int error, hostIsNew, maskIsNew;
    258  1.1  cgd 	u_long i;
    259  1.1  cgd 
    260  1.1  cgd 	/*
    261  1.1  cgd 	 * Find address for this interface, if it exists.
    262  1.1  cgd 	 */
    263  1.1  cgd 	if (ifp)
    264  1.1  cgd 		for (ia = in_ifaddr; ia; ia = ia->ia_next)
    265  1.1  cgd 			if (ia->ia_ifp == ifp)
    266  1.1  cgd 				break;
    267  1.1  cgd 
    268  1.1  cgd 	switch (cmd) {
    269  1.1  cgd 
    270  1.1  cgd 	case SIOCAIFADDR:
    271  1.1  cgd 	case SIOCDIFADDR:
    272  1.1  cgd 		if (ifra->ifra_addr.sin_family == AF_INET)
    273  1.1  cgd 		    for (oia = ia; ia; ia = ia->ia_next) {
    274  1.1  cgd 			if (ia->ia_ifp == ifp  &&
    275  1.1  cgd 			    ia->ia_addr.sin_addr.s_addr ==
    276  1.1  cgd 				ifra->ifra_addr.sin_addr.s_addr)
    277  1.1  cgd 			    break;
    278  1.1  cgd 		}
    279  1.1  cgd 		if (cmd == SIOCDIFADDR && ia == 0)
    280  1.1  cgd 			return (EADDRNOTAVAIL);
    281  1.1  cgd 		/* FALLTHROUGH */
    282  1.1  cgd 	case SIOCSIFADDR:
    283  1.1  cgd 	case SIOCSIFNETMASK:
    284  1.1  cgd 	case SIOCSIFDSTADDR:
    285  1.1  cgd 		if ((so->so_state & SS_PRIV) == 0)
    286  1.1  cgd 			return (EPERM);
    287  1.1  cgd 
    288  1.1  cgd 		if (ifp == 0)
    289  1.1  cgd 			panic("in_control");
    290  1.1  cgd 		if (ia == (struct in_ifaddr *)0) {
    291  1.1  cgd 			m = m_getclr(M_WAIT, MT_IFADDR);
    292  1.1  cgd 			if (m == (struct mbuf *)NULL)
    293  1.1  cgd 				return (ENOBUFS);
    294  1.1  cgd 			if (ia = in_ifaddr) {
    295  1.1  cgd 				for ( ; ia->ia_next; ia = ia->ia_next)
    296  1.1  cgd 					;
    297  1.1  cgd 				ia->ia_next = mtod(m, struct in_ifaddr *);
    298  1.1  cgd 			} else
    299  1.1  cgd 				in_ifaddr = mtod(m, struct in_ifaddr *);
    300  1.1  cgd 			ia = mtod(m, struct in_ifaddr *);
    301  1.1  cgd 			if (ifa = ifp->if_addrlist) {
    302  1.1  cgd 				for ( ; ifa->ifa_next; ifa = ifa->ifa_next)
    303  1.1  cgd 					;
    304  1.1  cgd 				ifa->ifa_next = (struct ifaddr *) ia;
    305  1.1  cgd 			} else
    306  1.1  cgd 				ifp->if_addrlist = (struct ifaddr *) ia;
    307  1.1  cgd 			ia->ia_ifa.ifa_addr = (struct sockaddr *)&ia->ia_addr;
    308  1.1  cgd 			ia->ia_ifa.ifa_dstaddr
    309  1.1  cgd 					= (struct sockaddr *)&ia->ia_dstaddr;
    310  1.1  cgd 			ia->ia_ifa.ifa_netmask
    311  1.1  cgd 					= (struct sockaddr *)&ia->ia_sockmask;
    312  1.1  cgd 			ia->ia_sockmask.sin_len = 8;
    313  1.1  cgd 			if (ifp->if_flags & IFF_BROADCAST) {
    314  1.1  cgd 				ia->ia_broadaddr.sin_len = sizeof(ia->ia_addr);
    315  1.1  cgd 				ia->ia_broadaddr.sin_family = AF_INET;
    316  1.1  cgd 			}
    317  1.1  cgd 			ia->ia_ifp = ifp;
    318  1.1  cgd 			if (ifp != &loif)
    319  1.1  cgd 				in_interfaces++;
    320  1.1  cgd 		}
    321  1.1  cgd 		break;
    322  1.1  cgd 
    323  1.1  cgd 	case SIOCSIFBRDADDR:
    324  1.1  cgd 		if ((so->so_state & SS_PRIV) == 0)
    325  1.1  cgd 			return (EPERM);
    326  1.1  cgd 		/* FALLTHROUGH */
    327  1.1  cgd 
    328  1.1  cgd 	case SIOCGIFADDR:
    329  1.1  cgd 	case SIOCGIFNETMASK:
    330  1.1  cgd 	case SIOCGIFDSTADDR:
    331  1.1  cgd 	case SIOCGIFBRDADDR:
    332  1.1  cgd 		if (ia == (struct in_ifaddr *)0)
    333  1.1  cgd 			return (EADDRNOTAVAIL);
    334  1.1  cgd 		break;
    335  1.1  cgd 
    336  1.1  cgd 	default:
    337  1.1  cgd 		return (EOPNOTSUPP);
    338  1.1  cgd 		break;
    339  1.1  cgd 	}
    340  1.1  cgd 	switch (cmd) {
    341  1.1  cgd 
    342  1.1  cgd 	case SIOCGIFADDR:
    343  1.1  cgd 		*((struct sockaddr_in *)&ifr->ifr_addr) = ia->ia_addr;
    344  1.1  cgd 		break;
    345  1.1  cgd 
    346  1.1  cgd 	case SIOCGIFBRDADDR:
    347  1.1  cgd 		if ((ifp->if_flags & IFF_BROADCAST) == 0)
    348  1.1  cgd 			return (EINVAL);
    349  1.1  cgd 		*((struct sockaddr_in *)&ifr->ifr_dstaddr) = ia->ia_broadaddr;
    350  1.1  cgd 		break;
    351  1.1  cgd 
    352  1.1  cgd 	case SIOCGIFDSTADDR:
    353  1.1  cgd 		if ((ifp->if_flags & IFF_POINTOPOINT) == 0)
    354  1.1  cgd 			return (EINVAL);
    355  1.1  cgd 		*((struct sockaddr_in *)&ifr->ifr_dstaddr) = ia->ia_dstaddr;
    356  1.1  cgd 		break;
    357  1.1  cgd 
    358  1.1  cgd 	case SIOCGIFNETMASK:
    359  1.1  cgd 		*((struct sockaddr_in *)&ifr->ifr_addr) = ia->ia_sockmask;
    360  1.1  cgd 		break;
    361  1.1  cgd 
    362  1.1  cgd 	case SIOCSIFDSTADDR:
    363  1.1  cgd 		if ((ifp->if_flags & IFF_POINTOPOINT) == 0)
    364  1.1  cgd 			return (EINVAL);
    365  1.1  cgd 		oldaddr = ia->ia_dstaddr;
    366  1.1  cgd 		ia->ia_dstaddr = *(struct sockaddr_in *)&ifr->ifr_dstaddr;
    367  1.1  cgd 		if (ifp->if_ioctl &&
    368  1.1  cgd 		    (error = (*ifp->if_ioctl)(ifp, SIOCSIFDSTADDR, ia))) {
    369  1.1  cgd 			ia->ia_dstaddr = oldaddr;
    370  1.1  cgd 			return (error);
    371  1.1  cgd 		}
    372  1.1  cgd 		if (ia->ia_flags & IFA_ROUTE) {
    373  1.1  cgd 			ia->ia_ifa.ifa_dstaddr = (struct sockaddr *)&oldaddr;
    374  1.1  cgd 			rtinit(&(ia->ia_ifa), (int)RTM_DELETE, RTF_HOST);
    375  1.1  cgd 			ia->ia_ifa.ifa_dstaddr =
    376  1.1  cgd 					(struct sockaddr *)&ia->ia_dstaddr;
    377  1.1  cgd 			rtinit(&(ia->ia_ifa), (int)RTM_ADD, RTF_HOST|RTF_UP);
    378  1.1  cgd 		}
    379  1.1  cgd 		break;
    380  1.1  cgd 
    381  1.1  cgd 	case SIOCSIFBRDADDR:
    382  1.1  cgd 		if ((ifp->if_flags & IFF_BROADCAST) == 0)
    383  1.1  cgd 			return (EINVAL);
    384  1.1  cgd 		ia->ia_broadaddr = *(struct sockaddr_in *)&ifr->ifr_broadaddr;
    385  1.1  cgd 		break;
    386  1.1  cgd 
    387  1.1  cgd 	case SIOCSIFADDR:
    388  1.1  cgd 		return (in_ifinit(ifp, ia,
    389  1.1  cgd 		    (struct sockaddr_in *) &ifr->ifr_addr, 1));
    390  1.1  cgd 
    391  1.1  cgd 	case SIOCSIFNETMASK:
    392  1.1  cgd 		i = ifra->ifra_addr.sin_addr.s_addr;
    393  1.1  cgd 		ia->ia_subnetmask = ntohl(ia->ia_sockmask.sin_addr.s_addr = i);
    394  1.1  cgd 		break;
    395  1.1  cgd 
    396  1.1  cgd 	case SIOCAIFADDR:
    397  1.1  cgd 		maskIsNew = 0;
    398  1.1  cgd 		hostIsNew = 1;
    399  1.1  cgd 		error = 0;
    400  1.1  cgd 		if (ia->ia_addr.sin_family == AF_INET) {
    401  1.1  cgd 			if (ifra->ifra_addr.sin_len == 0) {
    402  1.1  cgd 				ifra->ifra_addr = ia->ia_addr;
    403  1.1  cgd 				hostIsNew = 0;
    404  1.1  cgd 			} else if (ifra->ifra_addr.sin_addr.s_addr ==
    405  1.1  cgd 					       ia->ia_addr.sin_addr.s_addr)
    406  1.1  cgd 				hostIsNew = 0;
    407  1.1  cgd 		}
    408  1.1  cgd 		if (ifra->ifra_mask.sin_len) {
    409  1.1  cgd 			in_ifscrub(ifp, ia);
    410  1.1  cgd 			ia->ia_sockmask = ifra->ifra_mask;
    411  1.1  cgd 			ia->ia_subnetmask =
    412  1.1  cgd 			     ntohl(ia->ia_sockmask.sin_addr.s_addr);
    413  1.1  cgd 			maskIsNew = 1;
    414  1.1  cgd 		}
    415  1.1  cgd 		if ((ifp->if_flags & IFF_POINTOPOINT) &&
    416  1.1  cgd 		    (ifra->ifra_dstaddr.sin_family == AF_INET)) {
    417  1.1  cgd 			in_ifscrub(ifp, ia);
    418  1.1  cgd 			ia->ia_dstaddr = ifra->ifra_dstaddr;
    419  1.1  cgd 			maskIsNew  = 1; /* We lie; but the effect's the same */
    420  1.1  cgd 		}
    421  1.1  cgd 		if (ifra->ifra_addr.sin_family == AF_INET &&
    422  1.1  cgd 		    (hostIsNew || maskIsNew))
    423  1.1  cgd 			error = in_ifinit(ifp, ia, &ifra->ifra_addr, 0);
    424  1.1  cgd 		if ((ifp->if_flags & IFF_BROADCAST) &&
    425  1.1  cgd 		    (ifra->ifra_broadaddr.sin_family == AF_INET))
    426  1.1  cgd 			ia->ia_broadaddr = ifra->ifra_broadaddr;
    427  1.1  cgd 		return (error);
    428  1.1  cgd 
    429  1.1  cgd 	case SIOCDIFADDR:
    430  1.1  cgd 		in_ifscrub(ifp, ia);
    431  1.1  cgd 		if ((ifa = ifp->if_addrlist) == (struct ifaddr *)ia)
    432  1.1  cgd 			ifp->if_addrlist = ifa->ifa_next;
    433  1.1  cgd 		else {
    434  1.1  cgd 			while (ifa->ifa_next &&
    435  1.1  cgd 			       (ifa->ifa_next != (struct ifaddr *)ia))
    436  1.1  cgd 				    ifa = ifa->ifa_next;
    437  1.1  cgd 			if (ifa->ifa_next)
    438  1.1  cgd 				ifa->ifa_next = ((struct ifaddr *)ia)->ifa_next;
    439  1.1  cgd 			else
    440  1.1  cgd 				printf("Couldn't unlink inifaddr from ifp\n");
    441  1.1  cgd 		}
    442  1.1  cgd 		oia = ia;
    443  1.1  cgd 		if (oia == (ia = in_ifaddr))
    444  1.1  cgd 			in_ifaddr = ia->ia_next;
    445  1.1  cgd 		else {
    446  1.1  cgd 			while (ia->ia_next && (ia->ia_next != oia))
    447  1.1  cgd 				ia = ia->ia_next;
    448  1.1  cgd 			if (ia->ia_next)
    449  1.1  cgd 				ia->ia_next = oia->ia_next;
    450  1.1  cgd 			else
    451  1.1  cgd 				printf("Didn't unlink inifadr from list\n");
    452  1.1  cgd 		}
    453  1.1  cgd 		(void) m_free(dtom(oia));
    454  1.1  cgd 		break;
    455  1.1  cgd 
    456  1.1  cgd 	default:
    457  1.1  cgd 		if (ifp == 0 || ifp->if_ioctl == 0)
    458  1.1  cgd 			return (EOPNOTSUPP);
    459  1.1  cgd 		return ((*ifp->if_ioctl)(ifp, cmd, data));
    460  1.1  cgd 	}
    461  1.1  cgd 	return (0);
    462  1.1  cgd }
    463  1.1  cgd 
    464  1.1  cgd /*
    465  1.1  cgd  * Delete any existing route for an interface.
    466  1.1  cgd  */
    467  1.1  cgd in_ifscrub(ifp, ia)
    468  1.1  cgd 	register struct ifnet *ifp;
    469  1.1  cgd 	register struct in_ifaddr *ia;
    470  1.1  cgd {
    471  1.1  cgd 
    472  1.1  cgd 	if ((ia->ia_flags & IFA_ROUTE) == 0)
    473  1.1  cgd 		return;
    474  1.1  cgd 	if (ifp->if_flags & (IFF_LOOPBACK|IFF_POINTOPOINT))
    475  1.1  cgd 		rtinit(&(ia->ia_ifa), (int)RTM_DELETE, RTF_HOST);
    476  1.1  cgd 	else
    477  1.1  cgd 		rtinit(&(ia->ia_ifa), (int)RTM_DELETE, 0);
    478  1.1  cgd 	ia->ia_flags &= ~IFA_ROUTE;
    479  1.1  cgd }
    480  1.1  cgd 
    481  1.1  cgd /*
    482  1.1  cgd  * Initialize an interface's internet address
    483  1.1  cgd  * and routing table entry.
    484  1.1  cgd  */
    485  1.1  cgd in_ifinit(ifp, ia, sin, scrub)
    486  1.1  cgd 	register struct ifnet *ifp;
    487  1.1  cgd 	register struct in_ifaddr *ia;
    488  1.1  cgd 	struct sockaddr_in *sin;
    489  1.1  cgd {
    490  1.1  cgd 	register u_long i = ntohl(sin->sin_addr.s_addr);
    491  1.1  cgd 	struct sockaddr_in oldaddr;
    492  1.1  cgd 	int s = splimp(), error, flags = RTF_UP;
    493  1.1  cgd 
    494  1.1  cgd 	oldaddr = ia->ia_addr;
    495  1.1  cgd 	ia->ia_addr = *sin;
    496  1.1  cgd 	/*
    497  1.1  cgd 	 * Give the interface a chance to initialize
    498  1.1  cgd 	 * if this is its first address,
    499  1.1  cgd 	 * and to validate the address if necessary.
    500  1.1  cgd 	 */
    501  1.1  cgd 	if (ifp->if_ioctl && (error = (*ifp->if_ioctl)(ifp, SIOCSIFADDR, ia))) {
    502  1.1  cgd 		splx(s);
    503  1.1  cgd 		ia->ia_addr = oldaddr;
    504  1.1  cgd 		return (error);
    505  1.1  cgd 	}
    506  1.1  cgd 	splx(s);
    507  1.1  cgd 	if (scrub) {
    508  1.1  cgd 		ia->ia_ifa.ifa_addr = (struct sockaddr *)&oldaddr;
    509  1.1  cgd 		in_ifscrub(ifp, ia);
    510  1.1  cgd 		ia->ia_ifa.ifa_addr = (struct sockaddr *)&ia->ia_addr;
    511  1.1  cgd 	}
    512  1.1  cgd 	if (IN_CLASSA(i))
    513  1.1  cgd 		ia->ia_netmask = IN_CLASSA_NET;
    514  1.1  cgd 	else if (IN_CLASSB(i))
    515  1.1  cgd 		ia->ia_netmask = IN_CLASSB_NET;
    516  1.1  cgd 	else
    517  1.1  cgd 		ia->ia_netmask = IN_CLASSC_NET;
    518  1.1  cgd 	ia->ia_net = i & ia->ia_netmask;
    519  1.1  cgd 	/*
    520  1.1  cgd 	 * The subnet mask includes at least the standard network part,
    521  1.1  cgd 	 * but may already have been set to a larger value.
    522  1.1  cgd 	 */
    523  1.1  cgd 	ia->ia_subnetmask |= ia->ia_netmask;
    524  1.1  cgd 	ia->ia_subnet = i & ia->ia_subnetmask;
    525  1.1  cgd 	ia->ia_sockmask.sin_addr.s_addr = htonl(ia->ia_subnetmask);
    526  1.1  cgd 	{
    527  1.1  cgd 		register char *cp = (char *) (1 + &(ia->ia_sockmask.sin_addr));
    528  1.1  cgd 		register char *cpbase = (char *) &(ia->ia_sockmask.sin_addr);
    529  1.1  cgd 		while (--cp >= cpbase)
    530  1.1  cgd 			if (*cp) {
    531  1.1  cgd 				ia->ia_sockmask.sin_len =
    532  1.1  cgd 					1 + cp - (char *) &(ia->ia_sockmask);
    533  1.1  cgd 				break;
    534  1.1  cgd 			}
    535  1.1  cgd 	}
    536  1.1  cgd 	/*
    537  1.1  cgd 	 * Add route for the network.
    538  1.1  cgd 	 */
    539  1.1  cgd 	if (ifp->if_flags & IFF_BROADCAST) {
    540  1.1  cgd 		ia->ia_broadaddr.sin_addr =
    541  1.1  cgd 			in_makeaddr(ia->ia_subnet, INADDR_BROADCAST);
    542  1.1  cgd 		ia->ia_netbroadcast.s_addr =
    543  1.1  cgd 		    htonl(ia->ia_net | (INADDR_BROADCAST &~ ia->ia_netmask));
    544  1.1  cgd 	} else if (ifp->if_flags & IFF_LOOPBACK) {
    545  1.1  cgd 		ia->ia_ifa.ifa_dstaddr = ia->ia_ifa.ifa_addr;
    546  1.1  cgd 		flags |= RTF_HOST;
    547  1.1  cgd 	} else if (ifp->if_flags & IFF_POINTOPOINT) {
    548  1.1  cgd 		if (ia->ia_dstaddr.sin_family != AF_INET)
    549  1.1  cgd 			return (0);
    550  1.1  cgd 		flags |= RTF_HOST;
    551  1.1  cgd 	}
    552  1.1  cgd 	if ((error = rtinit(&(ia->ia_ifa), (int)RTM_ADD, flags)) == 0)
    553  1.1  cgd 		ia->ia_flags |= IFA_ROUTE;
    554  1.1  cgd 	return (error);
    555  1.1  cgd }
    556  1.1  cgd 
    557  1.1  cgd /*
    558  1.1  cgd  * Return address info for specified internet network.
    559  1.1  cgd  */
    560  1.1  cgd struct in_ifaddr *
    561  1.1  cgd in_iaonnetof(net)
    562  1.1  cgd 	u_long net;
    563  1.1  cgd {
    564  1.1  cgd 	register struct in_ifaddr *ia;
    565  1.1  cgd 
    566  1.1  cgd 	for (ia = in_ifaddr; ia; ia = ia->ia_next)
    567  1.1  cgd 		if (ia->ia_subnet == net)
    568  1.1  cgd 			return (ia);
    569  1.1  cgd 	return ((struct in_ifaddr *)0);
    570  1.1  cgd }
    571  1.1  cgd 
    572  1.1  cgd /*
    573  1.1  cgd  * Return 1 if the address might be a local broadcast address.
    574  1.1  cgd  */
    575  1.1  cgd in_broadcast(in)
    576  1.1  cgd 	struct in_addr in;
    577  1.1  cgd {
    578  1.1  cgd 	register struct in_ifaddr *ia;
    579  1.1  cgd 	u_long t;
    580  1.1  cgd 
    581  1.1  cgd 	/*
    582  1.1  cgd 	 * Look through the list of addresses for a match
    583  1.1  cgd 	 * with a broadcast address.
    584  1.1  cgd 	 */
    585  1.1  cgd 	for (ia = in_ifaddr; ia; ia = ia->ia_next)
    586  1.1  cgd 	    if (ia->ia_ifp->if_flags & IFF_BROADCAST) {
    587  1.1  cgd 		if (ia->ia_broadaddr.sin_addr.s_addr == in.s_addr)
    588  1.1  cgd 		     return (1);
    589  1.1  cgd 		/*
    590  1.1  cgd 		 * Check for old-style (host 0) broadcast.
    591  1.1  cgd 		 */
    592  1.1  cgd 		if ((t = ntohl(in.s_addr)) == ia->ia_subnet || t == ia->ia_net)
    593  1.1  cgd 		    return (1);
    594  1.1  cgd 	}
    595  1.1  cgd 	if (in.s_addr == INADDR_BROADCAST || in.s_addr == INADDR_ANY)
    596  1.1  cgd 		return (1);
    597  1.1  cgd 	return (0);
    598  1.1  cgd }
    599  1.1  cgd #endif
    600